Hydrogen peroxide atomizing sterilizer

By introducing a plug and spring structure into the hydrogen peroxide atomizing sterilizer, the problem of the nozzle's inability to be quickly disassembled and reassembled was solved, enabling convenient installation and disassembly of the nozzle and improving the equipment's maintenance convenience.

CN224070859UActive Publication Date: 2026-04-03HENAN KANGTEJIA MEDICAL INSTR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-09
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

The nozzles of existing hydrogen peroxide atomizing sterilizers cannot be quickly disassembled and reassembled, making it impossible to replace or repair them in a timely manner when they become clogged.

Method used

The design includes components such as a first insert rod, a second insert rod, a push block, a second spring, and a fixing block. Through the combination of insertion and spring, the nozzle can be quickly installed and removed.

Benefits of technology

It enables quick disassembly and assembly of the nozzles, improves maintenance efficiency, and prevents the inconvenience of nozzle clogging.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224070859U_ABST
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Abstract

The utility model relates to the field of atomization disinfection machines, in particular to a hydrogen peroxide atomization disinfection machine which comprises a machine body, a first connector is fixedly installed at the output end of the machine body, a telescopic pipe is fixedly connected to the upper surface of the first connector, and a connecting frame is fixedly connected to the end, away from the first connector, of the telescopic pipe. A spray head is inserted into the inner wall of the connecting frame, four first inserting grooves are formed in the outer surface of the connecting frame, four first inserting rods are fixedly connected to the bottom surface of the spray head, the spray head is inserted along the connecting frame, and in the process, the first inserting rods are inserted along the corresponding first inserting grooves; then the second inserting rods are inserted into the corresponding second inserting grooves, so that the second inserting rods can be fixed, and the nozzles and the connecting frame can be fixed; and therefore, the effect that the spray head can be quickly disassembled and assembled according to whether a second inserting rod is inserted into a corresponding second inserting groove or not is achieved.
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Description

Technical Field

[0001] This utility model relates to the field of atomizing disinfection machine technology, specifically a hydrogen peroxide atomizing disinfection machine. Background Technology

[0002] Hydrogen peroxide sterilizers are a commonly used sterilization device in the medical field. By vaporizing hydrogen peroxide into aerosol particles and spraying them into the space, they can sterilize the air and the surfaces of objects in the space. Furthermore, by utilizing the instability of hydrogen peroxide, it decomposes itself into oxygen and water, thereby preventing air pollution.

[0003] A search revealed a Chinese patent with publication number CN219332646U, which discloses a hydrogen peroxide atomizing disinfection machine. The key technical point is that a motor drives a rotating shaft, which in turn moves a positioning rod connected to the rotating shaft within a positioning groove on a lifting plate. This causes the lifting plate to move up and down reciprocally, allowing the nozzles to rotate during this movement. This changes the nozzle angle, enabling the atomized disinfectant water to be sprayed in different directions, thus increasing the disinfection range and improving efficiency and effectiveness. A limiting block is used to restrict the movement of the lifting plate, and a reset spring is used to reset the lifting plate for the next lifting cycle.

[0004] However, existing technologies do not allow for the disassembly and replacement of the nozzle, resulting in the inability to promptly replace or repair the nozzle when it becomes clogged or damaged. By inserting the nozzle along the connecting bracket, the first insert rod will be inserted along the corresponding first slot until the second slot and the second insert rod are on the same central axis. Then, by connecting the second insert rod to the corresponding second slot, the nozzle can be fixed to the connecting bracket. This achieves the effect of quickly disassembling and assembling the nozzle by whether or not the second insert rod is connected to the corresponding second slot. Therefore, a new solution is needed to solve this problem. Utility Model Content

[0005] The aforementioned background technology addresses the problem that existing technologies cannot quickly assemble and disassemble the nozzle.

[0006] This utility model discloses a hydrogen peroxide atomizing sterilizer, comprising a body, a first connector fixedly installed at the output end of the body, a telescopic tube fixedly connected to the upper surface of the first connector, a connecting frame fixedly connected to the end of the telescopic tube away from the first connector, a nozzle inserted into the inner wall of the connecting frame, four first slots formed on the outer surface of the connecting frame, four first inserts fixedly connected to the bottom surface of the nozzle, a second slot formed on the outer surface of each first insert, the inner wall of each first slot slidably connected to the corresponding first insert, and four second inserts slidably connected to the inner wall of the connecting frame, the outer surface of each second insert being inserted into the corresponding second slot.

[0007] Furthermore, each of the second inserts is fixedly connected to a push block at the end away from the corresponding first insert, and the outer surface of each push block is slidably connected to the connecting frame.

[0008] Furthermore, a second spring is fixedly connected to the end of each push block away from the corresponding second insert rod, and the end of each second spring away from the corresponding second insert rod is fixedly connected to the connecting frame.

[0009] Furthermore, the connecting frame has four fixing slots inside, and a fixing block is slidably connected to the inner wall of each fixing slot. A first spring is fixedly connected to the top of each fixing block, and the top of each first spring is fixedly connected to the nozzle.

[0010] Furthermore, a feed inlet is provided on the upper surface of the machine body, and a sealing gasket is fixedly connected to the inner wall of the feed inlet.

[0011] Furthermore, a storage tank is inserted into the inner wall of the feed inlet, and a sealing groove is formed on the outer surface of the storage tank, with the outer surface of the sealing gasket engaging with the sealing groove.

[0012] Furthermore, a stand is fixedly connected to the bottom surface of the machine body, a heat dissipation mechanism is fixedly installed on the outer surface of the machine body, and a control center is fixedly installed on the outer surface of the machine body.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] 1. This utility model includes components such as a first connector, a telescopic tube, a connecting frame, a nozzle, a first slot, a first insert rod, a second slot, and a second insert rod. By inserting the nozzle along the connecting frame, the first insert rod is inserted along the corresponding first slot until the second slot and the second insert rod are on the same central axis. Then, by inserting the second insert rod into the corresponding second slot, the nozzle is fixed to the connecting frame. This achieves the effect of quickly assembling and disassembling the nozzle by whether or not the second insert rod is inserted into the corresponding second slot.

[0015] 2. This utility model, by setting up components such as a first spring, a second spring, a second insert rod, a push block, a nozzle, a fixing block, and a fixing groove, allows for easy installation of the nozzle. During the installation process, the push block is pushed to compress the corresponding second spring, and the nozzle is pressed to quickly engage with the connecting frame. In this process, the first spring is compressed, and then, without external force, the second spring, under its rebound force, pushes the corresponding second insert rod into the corresponding second slot. The first spring lifts the nozzle, thus achieving the effect of making the nozzle easier to install and remove through the arrangement of the first and second springs. Attached Figure Description

[0016] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0017] Figure 1 This is a schematic diagram of the storage tank structure of this utility model;

[0018] Figure 2 This is a schematic diagram of the overall structure of this utility model;

[0019] Figure 3 This is a schematic diagram of the second spring structure of this utility model;

[0020] Figure 4 This is a schematic diagram of the connecting frame structure of this utility model.

[0021] In the diagram: 1. Body; 2. Legs; 3. Heat dissipation mechanism; 4. Control center; 5. Feed inlet; 6. Sealing gasket; 7. Storage tank; 8. Sealing groove; 9. First connector; 10. Telescopic tube; 11. Connecting frame; 12. First slot; 13. Fixing groove; 14. First spring; 15. Fixing block; 16. Nozzle; 17. First insert rod; 18. Second slot; 19. Second insert rod; 20. Second spring; 21. Push block. Detailed Implementation

[0022] The following illustrations will reveal several embodiments of the present invention. For clarity, many physical details will be described in the following description. However, it should be understood that these physical details should not be used to limit the present invention. That is, in some embodiments of the present invention, these physical details are not essential. Furthermore, for the sake of simplicity, some conventional structures and components will be shown in a simple schematic manner in the illustrations.

[0023] Please see Figure 1 , Figure 3 , Figure 4 This utility model discloses a hydrogen peroxide atomizing disinfection machine, comprising a body 1. A first connector 9 is fixedly installed at the output end of the body 1, allowing for quick connection with the body 1. The first connector 9 uses high-quality sealing materials and connection methods to prevent hydrogen peroxide leakage from harming operators and the surrounding environment. A telescopic tube 10 is fixedly connected to the upper surface of the first connector 9. The telescopic tube 10 is a pipe that can freely extend and retract as needed, typically made of materials such as rubber, plastic, or metal, and can be adjusted to any angle as required. A connecting frame 11 is fixedly connected to the end of the telescopic tube 10 away from the first connector 9. A nozzle 16 is inserted into the inner wall of the connecting frame 11. Specifically, by installing the nozzle 16 inside the connecting frame 11, hydrogen peroxide can be atomized and sprayed through the nozzle 16.

[0024] In a preferred embodiment, the outer surface of the connecting frame 11 is provided with four first slots 12, and the bottom surface of the nozzle 16 is fixedly connected with four first inserts 17. The inner wall of each first slot 12 is slidably connected to the corresponding first insert 17. During the installation of the nozzle 16, the first insert 17 is vertically inserted along the corresponding first slot 12. The outer surface of each first insert 17 is provided with a second slot 18, and the setting direction of the second slot 18 is perpendicular to the corresponding first insert 17. The inner wall of the connecting frame 11 is slidably connected with four second inserts 19, and the outer surface of each second insert 19 is inserted into the corresponding second slot 18. Specifically, during the installation of the nozzle 16, the first insert 17 is inserted into the corresponding first slot 12 until the second insert 19 and the corresponding second slot 18 are on the same central axis. At this time, the nozzle 16 can be installed on the connecting frame 11 by fixing the first insert 17 through the insertion between the second insert 19 and the corresponding second slot 18.

[0025] In this embodiment, each second insertion rod 19 is fixedly connected to a push block 21 at the end away from the corresponding first insertion rod 17. The outer surface of each push block 21 is slidably connected to the connecting frame 11. Specifically, by pushing the push block 21, the push block 21 will drive the corresponding first insertion rod 17 to slide horizontally along the connecting frame 11.

[0026] Looking back Figure 3 Each push block 21 has a second spring 20 fixedly connected to the end away from the corresponding second insertion rod 19. The end of each second spring 20 away from the corresponding second insertion rod 19 is fixedly connected to the connecting frame 11. Specifically, the second spring 20 is compressed when the push block 21 is pushed. When the second insertion rod 19 and the corresponding second slot 18 are on the same central axis, the push block 21 is released. At this time, the second spring 20 will push the corresponding second insertion rod 19 to automatically insert into the corresponding second slot 18 under the action of its rebound force.

[0027] like Figure 4 As shown, the connecting frame 11 has four fixing slots 13 inside. Each fixing slot 13 has a fixing block 15 slidably connected to its inner wall. Each fixing block 15 has a first spring 14 fixedly connected to its top. Each first spring 14 has its top fixedly connected to the nozzle 16. Specifically, during the installation of the nozzle 16, the fixing block 15 will enter the corresponding fixing slot 13 until the fixing block 15 is connected to the connecting frame 11. At this time, the first spring 14 will be compressed. Then, when there is no external force, the first spring 14 will push the nozzle 16 to spring up under its rebound force, which can facilitate the quick disassembly of the nozzle 16.

[0028] Please see Figure 1 The upper surface of the machine body 1 is provided with a feed inlet 5, and a sealing gasket 6 is fixedly connected to the inner wall of the feed inlet 5. Specifically, by installing the sealing gasket 6 inside the feed inlet 5, the sealing performance can be increased, preventing hydrogen peroxide leakage from causing harm to operators and the surrounding environment.

[0029] In this embodiment, a storage tank 7 is inserted into the inner wall of the inlet 5. A sealing groove 8 is formed on the outer surface of the storage tank 7. The outer surface of the sealing gasket 6 is engaged with the sealing groove 8. Specifically, the storage tank 7 can be quickly installed by inserting it along the inlet 5. During this process, the storage tank 7 will squeeze the sealing gasket 6 to deform it until the sealing gasket 6 enters the sealing groove 8, resets, and blocks the sealing groove 8, thereby enhancing the sealing performance of the hydrogen peroxide storage tank 7 and the pipeline interface.

[0030] In this embodiment, a stand 2 is fixedly connected to the bottom surface of the machine body 1. The stand 2 increases the stability of the machine body 1 during use. A heat dissipation mechanism 3 is fixedly installed on the outer surface of the machine body 1, and a control center 4 is fixedly installed on the outer surface of the machine body 1. Specifically, the heat dissipation mechanism 3 can dissipate heat from the machine body 1. The control center 4 includes a real-time concentration monitoring sensor and remote control function. When the concentration of hydrogen peroxide in the environment exceeds the safety threshold, the disinfection machine can immediately issue an audible and visual alarm and automatically stop spraying to ensure personnel safety. Furthermore, by equipping a remote control module, operators can start and stop the disinfection machine from a certain distance via a mobile application or wireless remote control, and can also adjust parameters such as spray volume and spray time to reduce the contact between operators and disinfectants.

[0031] The implementation principle is as follows: First, the storage tank 7 is quickly installed by inserting it along the inlet 5. During this process, the storage tank 7 will compress the sealing gasket 6, deforming it until the sealing gasket 6 enters the sealing groove 8, resets, and blocks the sealing groove 8, thereby enhancing the sealing performance of the hydrogen peroxide storage tank 7 and the pipeline interface. Then, the first connector 9 is installed with the machine body 1, and the nozzle 16 is installed in the connecting frame 11, allowing the hydrogen peroxide to be atomized and sprayed through the nozzle 16. During this process, pushing the push block 21 causes the corresponding second insert rod 19 to slide horizontally along the connecting frame 11, compressing the second spring 20, and then the first insert rod... 17 will be inserted along the corresponding first slot 12, and the fixing block 15 will enter the corresponding fixing groove 13. Then the first spring 14 will be compressed until the second insert rod 19 and the corresponding second slot 18 are on the same central axis. At this time, the push block 21 is released, and the second spring 20 will push the corresponding second insert rod 19 into the second slot 18 under its rebound force, so that the nozzle 16 can be quickly installed and fixed. When it is necessary to disassemble, push the push block 21, and when there is no external force, the first spring 14 will push the nozzle 16 to spring up under its rebound force, so that the nozzle 16 can be quickly disassembled.

[0032] The above are merely embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.

Claims

1. A hydrogen peroxide aerosol sterilizer comprising a body (1), characterized in that: The output end of the machine body (1) is fixedly installed with a first connecting head (9), the upper surface of the first connecting head (9) is fixedly connected with a telescopic pipe (10), the end, away from the first connecting head (9), of the telescopic pipe (10) is fixedly connected with a connecting frame (11), the inner wall of the connecting frame (11) is inserted with a spray head (16), the outer surface of the connecting frame (11) is provided with four first insertion grooves (12), the bottom surface of the spray head (16) is fixedly connected with four first insertion rods (17), the outer surface of each first insertion rod (17) is provided with a second insertion groove (18), the inner wall of each first insertion groove (12) is in sliding connection with the corresponding first insertion rod (17), and the inner wall of the connecting frame (11) is in sliding connection with four second insertion rods (19).

2. The hydrogen peroxide fogging sterilizer of claim 1, wherein: The end, away from the corresponding first insertion rod (17), of each second insertion rod (19) is fixedly connected with a push block (21), and the outer surface of each push block (21) is in sliding connection with the connecting frame (11).

3. A hydrogen peroxide misting sterilizer according to claim 2, wherein: The end, away from the corresponding second insertion rod (19), of each push block (21) is fixedly connected with a second spring (20), and the end, away from the corresponding second insertion rod (19), of each second spring (20) is fixedly connected with the connecting frame (11).

4. The hydrogen peroxide fogging disinfection machine according to claim 3, characterized in that: The inside of the connecting frame (11) is provided with four fixing grooves (13), the inner wall of each fixing groove (13) is in sliding connection with a fixing block (15), the top end of each fixing block (15) is fixedly connected with a first spring (14), and the top end of each first spring (14) is fixedly connected with the spray head (16).

5. The hydrogen peroxide fogging disinfection machine of claim 1, wherein: The upper surface of the machine body (1) is provided with an inlet (5), and the inner wall of the inlet (5) is fixedly connected with a sealing gasket (6).

6. A hydrogen peroxide misting sterilizer according to claim 5, wherein: The inner wall of the inlet (5) is inserted with a storage tank (7), the outer surface of the storage tank (7) is provided with a sealing groove (8), and the outer surface of the sealing gasket (6) is clamped with the sealing groove (8).

7. A hydrogen peroxide misting sterilizer according to claim 5 wherein: The bottom surface of the machine body (1) is fixedly connected with a foot support (2), the outer surface of the machine body (1) is fixedly installed with a heat dissipation mechanism (3), and the outer surface of the machine body (1) is fixedly installed with a control hub (4).

Citation Information

Patent Citations

  • Hydrogen peroxide atomizing sterilizer

    CN219332646U